nu_protocol/engine/
state_working_set.rs

1use crate::{
2    BlockId, Category, CompileError, Config, DeclId, FileId, GetSpan, Module, ModuleId, OverlayId,
3    ParseError, ParseWarning, ResolvedImportPattern, Signature, Span, SpanId, Type, Value, VarId,
4    VirtualPathId,
5    ast::Block,
6    engine::{
7        CachedFile, Command, CommandType, EngineState, OverlayFrame, StateDelta, Variable,
8        VirtualPath, Visibility, description::build_desc,
9    },
10};
11use core::panic;
12use std::{
13    collections::{HashMap, HashSet},
14    path::{Path, PathBuf},
15    sync::Arc,
16};
17
18#[cfg(feature = "plugin")]
19use crate::{PluginIdentity, PluginRegistryItem, RegisteredPlugin};
20
21/// A temporary extension to the global state. This handles bridging between the global state and the
22/// additional declarations and scope changes that are not yet part of the global scope.
23///
24/// This working set is created by the parser as a way of handling declarations and scope changes that
25/// may later be merged or dropped (and not merged) depending on the needs of the code calling the parser.
26pub struct StateWorkingSet<'a> {
27    pub permanent_state: &'a EngineState,
28    pub delta: StateDelta,
29    pub files: FileStack,
30    /// Whether or not predeclarations are searched when looking up a command (used with aliases)
31    pub search_predecls: bool,
32    pub parse_errors: Vec<ParseError>,
33    pub parse_warnings: Vec<ParseWarning>,
34    pub compile_errors: Vec<CompileError>,
35}
36
37impl<'a> StateWorkingSet<'a> {
38    pub fn new(permanent_state: &'a EngineState) -> Self {
39        // Initialize the file stack with the top-level file.
40        let files = if let Some(file) = permanent_state.file.clone() {
41            FileStack::with_file(file)
42        } else {
43            FileStack::new()
44        };
45
46        Self {
47            delta: StateDelta::new(permanent_state),
48            permanent_state,
49            files,
50            search_predecls: true,
51            parse_errors: vec![],
52            parse_warnings: vec![],
53            compile_errors: vec![],
54        }
55    }
56
57    pub fn permanent(&self) -> &EngineState {
58        self.permanent_state
59    }
60
61    pub fn error(&mut self, parse_error: ParseError) {
62        self.parse_errors.push(parse_error)
63    }
64
65    pub fn warning(&mut self, parse_warning: ParseWarning) {
66        self.parse_warnings.push(parse_warning)
67    }
68
69    pub fn num_files(&self) -> usize {
70        self.delta.num_files() + self.permanent_state.num_files()
71    }
72
73    pub fn num_virtual_paths(&self) -> usize {
74        self.delta.num_virtual_paths() + self.permanent_state.num_virtual_paths()
75    }
76
77    pub fn num_vars(&self) -> usize {
78        self.delta.num_vars() + self.permanent_state.num_vars()
79    }
80
81    pub fn num_decls(&self) -> usize {
82        self.delta.num_decls() + self.permanent_state.num_decls()
83    }
84
85    pub fn num_blocks(&self) -> usize {
86        self.delta.num_blocks() + self.permanent_state.num_blocks()
87    }
88
89    pub fn num_modules(&self) -> usize {
90        self.delta.num_modules() + self.permanent_state.num_modules()
91    }
92
93    pub fn unique_overlay_names(&self) -> HashSet<&[u8]> {
94        let mut names: HashSet<&[u8]> = self.permanent_state.active_overlay_names(&[]).collect();
95
96        for scope_frame in self.delta.scope.iter().rev() {
97            for overlay_id in scope_frame.active_overlays.iter().rev() {
98                let (overlay_name, _) = scope_frame
99                    .overlays
100                    .get(overlay_id.get())
101                    .expect("internal error: missing overlay");
102
103                names.insert(overlay_name);
104                names.retain(|n| !scope_frame.removed_overlays.iter().any(|m| n == m));
105            }
106        }
107
108        names
109    }
110
111    pub fn num_overlays(&self) -> usize {
112        self.unique_overlay_names().len()
113    }
114
115    pub fn add_decl(&mut self, decl: Box<dyn Command>) -> DeclId {
116        let name = decl.name().as_bytes().to_vec();
117
118        self.delta.decls.push(decl);
119        let decl_id = self.num_decls() - 1;
120        let decl_id = DeclId::new(decl_id);
121
122        self.last_overlay_mut().insert_decl(name, decl_id);
123
124        decl_id
125    }
126
127    pub fn use_decls(&mut self, decls: Vec<(Vec<u8>, DeclId)>) {
128        let overlay_frame = self.last_overlay_mut();
129
130        for (name, decl_id) in decls {
131            overlay_frame.insert_decl(name, decl_id);
132            overlay_frame.visibility.use_decl_id(&decl_id);
133        }
134    }
135
136    pub fn use_modules(&mut self, modules: Vec<(Vec<u8>, ModuleId)>) {
137        let overlay_frame = self.last_overlay_mut();
138
139        for (name, module_id) in modules {
140            overlay_frame.insert_module(name, module_id);
141            // overlay_frame.visibility.use_module_id(&module_id);  // TODO: Add hiding modules
142        }
143    }
144
145    pub fn use_variables(&mut self, variables: Vec<(Vec<u8>, VarId)>) {
146        let overlay_frame = self.last_overlay_mut();
147
148        for (mut name, var_id) in variables {
149            if !name.starts_with(b"$") {
150                name.insert(0, b'$');
151            }
152            overlay_frame.insert_variable(name, var_id);
153        }
154    }
155
156    pub fn add_predecl(&mut self, decl: Box<dyn Command>) -> Option<DeclId> {
157        let name = decl.name().as_bytes().to_vec();
158
159        self.delta.decls.push(decl);
160        let decl_id = self.num_decls() - 1;
161        let decl_id = DeclId::new(decl_id);
162
163        self.delta
164            .last_scope_frame_mut()
165            .predecls
166            .insert(name, decl_id)
167    }
168
169    #[cfg(feature = "plugin")]
170    pub fn find_or_create_plugin(
171        &mut self,
172        identity: &PluginIdentity,
173        make: impl FnOnce() -> Arc<dyn RegisteredPlugin>,
174    ) -> Arc<dyn RegisteredPlugin> {
175        // Check in delta first, then permanent_state
176        if let Some(plugin) = self
177            .delta
178            .plugins
179            .iter()
180            .chain(self.permanent_state.plugins())
181            .find(|p| p.identity() == identity)
182        {
183            plugin.clone()
184        } else {
185            let plugin = make();
186            self.delta.plugins.push(plugin.clone());
187            plugin
188        }
189    }
190
191    #[cfg(feature = "plugin")]
192    pub fn update_plugin_registry(&mut self, item: PluginRegistryItem) {
193        self.delta.plugin_registry_items.push(item);
194    }
195
196    pub fn merge_predecl(&mut self, name: &[u8]) -> Option<DeclId> {
197        self.move_predecls_to_overlay();
198
199        let overlay_frame = self.last_overlay_mut();
200
201        if let Some(decl_id) = overlay_frame.predecls.remove(name) {
202            overlay_frame.insert_decl(name.into(), decl_id);
203
204            return Some(decl_id);
205        }
206
207        None
208    }
209
210    fn move_predecls_to_overlay(&mut self) {
211        let predecls: HashMap<Vec<u8>, DeclId> =
212            self.delta.last_scope_frame_mut().predecls.drain().collect();
213
214        self.last_overlay_mut().predecls.extend(predecls);
215    }
216
217    pub fn hide_decl(&mut self, name: &[u8]) -> Option<DeclId> {
218        let mut removed_overlays = vec![];
219        let mut visibility: Visibility = Visibility::new();
220
221        // Since we can mutate scope frames in delta, remove the id directly
222        for scope_frame in self.delta.scope.iter_mut().rev() {
223            for overlay_id in scope_frame
224                .active_overlay_ids(&mut removed_overlays)
225                .iter()
226                .rev()
227            {
228                let overlay_frame = scope_frame.get_overlay_mut(*overlay_id);
229
230                visibility.append(&overlay_frame.visibility);
231
232                if let Some(decl_id) = overlay_frame.get_decl(name) {
233                    if visibility.is_decl_id_visible(&decl_id) {
234                        // Hide decl only if it's not already hidden
235                        overlay_frame.visibility.hide_decl_id(&decl_id);
236                        return Some(decl_id);
237                    }
238                }
239            }
240        }
241
242        // We cannot mutate the permanent state => store the information in the current overlay frame
243        // for scope in self.permanent_state.scope.iter().rev() {
244        for overlay_frame in self
245            .permanent_state
246            .active_overlays(&removed_overlays)
247            .rev()
248        {
249            visibility.append(&overlay_frame.visibility);
250
251            if let Some(decl_id) = overlay_frame.get_decl(name) {
252                if visibility.is_decl_id_visible(&decl_id) {
253                    // Hide decl only if it's not already hidden
254                    self.last_overlay_mut().visibility.hide_decl_id(&decl_id);
255                    return Some(decl_id);
256                }
257            }
258        }
259
260        None
261    }
262
263    pub fn hide_decls(&mut self, decls: &[Vec<u8>]) {
264        for decl in decls.iter() {
265            self.hide_decl(decl); // let's assume no errors
266        }
267    }
268
269    pub fn add_block(&mut self, block: Arc<Block>) -> BlockId {
270        log::trace!(
271            "block id={} added, has IR = {:?}",
272            self.num_blocks(),
273            block.ir_block.is_some()
274        );
275
276        self.delta.blocks.push(block);
277
278        BlockId::new(self.num_blocks() - 1)
279    }
280
281    pub fn add_module(&mut self, name: &str, module: Module, comments: Vec<Span>) -> ModuleId {
282        let name = name.as_bytes().to_vec();
283
284        self.delta.modules.push(Arc::new(module));
285        let module_id = self.num_modules() - 1;
286        let module_id = ModuleId::new(module_id);
287
288        if !comments.is_empty() {
289            self.delta
290                .doccomments
291                .add_module_comments(module_id, comments);
292        }
293
294        self.last_overlay_mut().modules.insert(name, module_id);
295
296        module_id
297    }
298
299    pub fn get_module_comments(&self, module_id: ModuleId) -> Option<&[Span]> {
300        self.delta
301            .doccomments
302            .get_module_comments(module_id)
303            .or_else(|| self.permanent_state.get_module_comments(module_id))
304    }
305
306    pub fn next_span_start(&self) -> usize {
307        let permanent_span_start = self.permanent_state.next_span_start();
308
309        if let Some(cached_file) = self.delta.files.last() {
310            cached_file.covered_span.end
311        } else {
312            permanent_span_start
313        }
314    }
315
316    pub fn files(&self) -> impl Iterator<Item = &CachedFile> {
317        self.permanent_state.files().chain(self.delta.files.iter())
318    }
319
320    pub fn get_contents_of_file(&self, file_id: FileId) -> Option<&[u8]> {
321        if let Some(cached_file) = self.permanent_state.get_file_contents().get(file_id.get()) {
322            return Some(&cached_file.content);
323        }
324        // The index subtraction will not underflow, if we hit the permanent state first.
325        // Check if you try reordering for locality
326        if let Some(cached_file) = self
327            .delta
328            .get_file_contents()
329            .get(file_id.get() - self.permanent_state.num_files())
330        {
331            return Some(&cached_file.content);
332        }
333
334        None
335    }
336
337    #[must_use]
338    pub fn add_file(&mut self, filename: String, contents: &[u8]) -> FileId {
339        // First, look for the file to see if we already have it
340        for (idx, cached_file) in self.files().enumerate() {
341            if *cached_file.name == filename && &*cached_file.content == contents {
342                return FileId::new(idx);
343            }
344        }
345
346        let next_span_start = self.next_span_start();
347        let next_span_end = next_span_start + contents.len();
348
349        let covered_span = Span::new(next_span_start, next_span_end);
350
351        self.delta.files.push(CachedFile {
352            name: filename.into(),
353            content: contents.into(),
354            covered_span,
355        });
356
357        FileId::new(self.num_files() - 1)
358    }
359
360    #[must_use]
361    pub fn add_virtual_path(&mut self, name: String, virtual_path: VirtualPath) -> VirtualPathId {
362        self.delta.virtual_paths.push((name, virtual_path));
363
364        VirtualPathId::new(self.num_virtual_paths() - 1)
365    }
366
367    pub fn get_span_for_filename(&self, filename: &str) -> Option<Span> {
368        let predicate = |file: &CachedFile| &*file.name == filename;
369        // search from end to start, in case there're duplicated files with the same name
370        let file_id = self
371            .delta
372            .files
373            .iter()
374            .rposition(predicate)
375            .map(|idx| idx + self.permanent_state.num_files())
376            .or_else(|| self.permanent_state.files().rposition(predicate))?;
377        let file_id = FileId::new(file_id);
378
379        Some(self.get_span_for_file(file_id))
380    }
381
382    /// Panics:
383    /// On invalid `FileId`
384    ///
385    /// Use with care
386    pub fn get_span_for_file(&self, file_id: FileId) -> Span {
387        let result = self
388            .files()
389            .nth(file_id.get())
390            .expect("internal error: could not find source for previously parsed file");
391
392        result.covered_span
393    }
394
395    pub fn get_span_contents(&self, span: Span) -> &[u8] {
396        let permanent_end = self.permanent_state.next_span_start();
397        if permanent_end <= span.start {
398            for cached_file in &self.delta.files {
399                if cached_file.covered_span.contains_span(span) {
400                    return &cached_file.content[span.start - cached_file.covered_span.start
401                        ..span.end - cached_file.covered_span.start];
402                }
403            }
404        }
405
406        // if no files with span were found, fall back on permanent ones
407        self.permanent_state.get_span_contents(span)
408    }
409
410    pub fn enter_scope(&mut self) {
411        self.delta.enter_scope();
412    }
413
414    pub fn exit_scope(&mut self) {
415        self.delta.exit_scope();
416    }
417
418    /// Find the [`DeclId`](crate::DeclId) corresponding to a predeclaration with `name`.
419    pub fn find_predecl(&self, name: &[u8]) -> Option<DeclId> {
420        let mut removed_overlays = vec![];
421
422        for scope_frame in self.delta.scope.iter().rev() {
423            if let Some(decl_id) = scope_frame.predecls.get(name) {
424                return Some(*decl_id);
425            }
426
427            for overlay_frame in scope_frame.active_overlays(&mut removed_overlays).rev() {
428                if let Some(decl_id) = overlay_frame.predecls.get(name) {
429                    return Some(*decl_id);
430                }
431            }
432        }
433
434        None
435    }
436
437    /// Find the [`DeclId`](crate::DeclId) corresponding to a declaration with `name`.
438    ///
439    /// Extends [`EngineState::find_decl`] to also search for predeclarations
440    /// (if [`StateWorkingSet::search_predecls`] is set), and declarations from scopes existing
441    /// only in [`StateDelta`].
442    pub fn find_decl(&self, name: &[u8]) -> Option<DeclId> {
443        let mut removed_overlays = vec![];
444
445        let mut visibility: Visibility = Visibility::new();
446
447        for scope_frame in self.delta.scope.iter().rev() {
448            if self.search_predecls {
449                if let Some(decl_id) = scope_frame.predecls.get(name) {
450                    if visibility.is_decl_id_visible(decl_id) {
451                        return Some(*decl_id);
452                    }
453                }
454            }
455
456            // check overlay in delta
457            for overlay_frame in scope_frame.active_overlays(&mut removed_overlays).rev() {
458                visibility.append(&overlay_frame.visibility);
459
460                if self.search_predecls {
461                    if let Some(decl_id) = overlay_frame.predecls.get(name) {
462                        if visibility.is_decl_id_visible(decl_id) {
463                            return Some(*decl_id);
464                        }
465                    }
466                }
467
468                if let Some(decl_id) = overlay_frame.get_decl(name) {
469                    if visibility.is_decl_id_visible(&decl_id) {
470                        return Some(decl_id);
471                    }
472                }
473            }
474        }
475
476        // check overlay in perma
477        self.permanent_state.find_decl(name, &removed_overlays)
478    }
479
480    /// Find the name of the declaration corresponding to `decl_id`.
481    ///
482    /// Extends [`EngineState::find_decl_name`] to also search for predeclarations (if [`StateWorkingSet::search_predecls`] is set),
483    /// and declarations from scopes existing only in [`StateDelta`].
484    pub fn find_decl_name(&self, decl_id: DeclId) -> Option<&[u8]> {
485        let mut removed_overlays = vec![];
486
487        let mut visibility: Visibility = Visibility::new();
488
489        for scope_frame in self.delta.scope.iter().rev() {
490            if self.search_predecls {
491                for (name, id) in scope_frame.predecls.iter() {
492                    if id == &decl_id {
493                        return Some(name);
494                    }
495                }
496            }
497
498            // check overlay in delta
499            for overlay_frame in scope_frame.active_overlays(&mut removed_overlays).rev() {
500                visibility.append(&overlay_frame.visibility);
501
502                if self.search_predecls {
503                    for (name, id) in overlay_frame.predecls.iter() {
504                        if id == &decl_id {
505                            return Some(name);
506                        }
507                    }
508                }
509
510                if visibility.is_decl_id_visible(&decl_id) {
511                    for (name, id) in overlay_frame.decls.iter() {
512                        if id == &decl_id {
513                            return Some(name);
514                        }
515                    }
516                }
517            }
518        }
519
520        // check overlay in perma
521        self.permanent_state
522            .find_decl_name(decl_id, &removed_overlays)
523    }
524
525    /// Find the [`ModuleId`](crate::ModuleId) corresponding to `name`.
526    ///
527    /// Extends [`EngineState::find_module`] to also search for ,
528    /// and declarations from scopes existing only in [`StateDelta`].
529    pub fn find_module(&self, name: &[u8]) -> Option<ModuleId> {
530        let mut removed_overlays = vec![];
531
532        for scope_frame in self.delta.scope.iter().rev() {
533            for overlay_frame in scope_frame.active_overlays(&mut removed_overlays).rev() {
534                if let Some(module_id) = overlay_frame.modules.get(name) {
535                    return Some(*module_id);
536                }
537            }
538        }
539
540        for overlay_frame in self
541            .permanent_state
542            .active_overlays(&removed_overlays)
543            .rev()
544        {
545            if let Some(module_id) = overlay_frame.modules.get(name) {
546                return Some(*module_id);
547            }
548        }
549
550        None
551    }
552
553    pub fn next_var_id(&self) -> VarId {
554        let num_permanent_vars = self.permanent_state.num_vars();
555        VarId::new(num_permanent_vars + self.delta.vars.len())
556    }
557
558    pub fn list_variables(&self) -> Vec<&[u8]> {
559        let mut removed_overlays = vec![];
560        let mut variables = HashSet::new();
561        for scope_frame in self.delta.scope.iter() {
562            for overlay_frame in scope_frame.active_overlays(&mut removed_overlays) {
563                variables.extend(overlay_frame.vars.keys().map(|k| &k[..]));
564            }
565        }
566
567        let permanent_vars = self
568            .permanent_state
569            .active_overlays(&removed_overlays)
570            .flat_map(|overlay_frame| overlay_frame.vars.keys().map(|k| &k[..]));
571
572        variables.extend(permanent_vars);
573        variables.into_iter().collect()
574    }
575
576    pub fn find_variable(&self, name: &[u8]) -> Option<VarId> {
577        let mut name = name.to_vec();
578        if !name.starts_with(b"$") {
579            name.insert(0, b'$');
580        }
581        let mut removed_overlays = vec![];
582
583        for scope_frame in self.delta.scope.iter().rev() {
584            for overlay_frame in scope_frame.active_overlays(&mut removed_overlays).rev() {
585                if let Some(var_id) = overlay_frame.vars.get(&name) {
586                    return Some(*var_id);
587                }
588            }
589        }
590
591        for overlay_frame in self
592            .permanent_state
593            .active_overlays(&removed_overlays)
594            .rev()
595        {
596            if let Some(var_id) = overlay_frame.vars.get(&name) {
597                return Some(*var_id);
598            }
599        }
600
601        None
602    }
603
604    pub fn find_variable_in_current_frame(&self, name: &[u8]) -> Option<VarId> {
605        let mut removed_overlays = vec![];
606
607        for scope_frame in self.delta.scope.iter().rev().take(1) {
608            for overlay_frame in scope_frame.active_overlays(&mut removed_overlays).rev() {
609                if let Some(var_id) = overlay_frame.vars.get(name) {
610                    return Some(*var_id);
611                }
612            }
613        }
614
615        None
616    }
617
618    pub fn add_variable(
619        &mut self,
620        mut name: Vec<u8>,
621        span: Span,
622        ty: Type,
623        mutable: bool,
624    ) -> VarId {
625        let next_id = self.next_var_id();
626        // correct name if necessary
627        if !name.starts_with(b"$") {
628            name.insert(0, b'$');
629        }
630
631        self.last_overlay_mut().vars.insert(name, next_id);
632
633        self.delta.vars.push(Variable::new(span, ty, mutable));
634
635        next_id
636    }
637
638    /// Returns the current working directory as a String, which is guaranteed to be canonicalized.
639    /// Returns an empty string if $env.PWD doesn't exist, is not a String, or is not an absolute path.
640    ///
641    /// It does NOT consider modifications to the working directory made on a stack.
642    #[deprecated(since = "0.92.3", note = "please use `EngineState::cwd()` instead")]
643    pub fn get_cwd(&self) -> String {
644        self.permanent_state
645            .cwd(None)
646            .map(|path| path.to_string_lossy().to_string())
647            .unwrap_or_default()
648    }
649
650    pub fn get_env_var(&self, name: &str) -> Option<&Value> {
651        self.permanent_state.get_env_var(name)
652    }
653
654    /// Returns a reference to the config stored at permanent state
655    ///
656    /// At runtime, you most likely want to call [`Stack::get_config()`][super::Stack::get_config()]
657    /// because this method does not capture environment updates during runtime.
658    pub fn get_config(&self) -> &Arc<Config> {
659        &self.permanent_state.config
660    }
661
662    pub fn set_variable_type(&mut self, var_id: VarId, ty: Type) {
663        let num_permanent_vars = self.permanent_state.num_vars();
664        if var_id.get() < num_permanent_vars {
665            panic!("Internal error: attempted to set into permanent state from working set")
666        } else {
667            self.delta.vars[var_id.get() - num_permanent_vars].ty = ty;
668        }
669    }
670
671    pub fn set_variable_const_val(&mut self, var_id: VarId, val: Value) {
672        let num_permanent_vars = self.permanent_state.num_vars();
673        if var_id.get() < num_permanent_vars {
674            panic!("Internal error: attempted to set into permanent state from working set")
675        } else {
676            self.delta.vars[var_id.get() - num_permanent_vars].const_val = Some(val);
677        }
678    }
679
680    pub fn get_variable(&self, var_id: VarId) -> &Variable {
681        let num_permanent_vars = self.permanent_state.num_vars();
682        if var_id.get() < num_permanent_vars {
683            self.permanent_state.get_var(var_id)
684        } else {
685            self.delta
686                .vars
687                .get(var_id.get() - num_permanent_vars)
688                .expect("internal error: missing variable")
689        }
690    }
691
692    pub fn get_variable_if_possible(&self, var_id: VarId) -> Option<&Variable> {
693        let num_permanent_vars = self.permanent_state.num_vars();
694        if var_id.get() < num_permanent_vars {
695            Some(self.permanent_state.get_var(var_id))
696        } else {
697            self.delta.vars.get(var_id.get() - num_permanent_vars)
698        }
699    }
700
701    pub fn get_constant(&self, var_id: VarId) -> Result<&Value, ParseError> {
702        let var = self.get_variable(var_id);
703
704        if let Some(const_val) = &var.const_val {
705            Ok(const_val)
706        } else {
707            Err(ParseError::InternalError(
708                "constant does not have a constant value".into(),
709                var.declaration_span,
710            ))
711        }
712    }
713
714    pub fn get_decl(&self, decl_id: DeclId) -> &dyn Command {
715        let num_permanent_decls = self.permanent_state.num_decls();
716        if decl_id.get() < num_permanent_decls {
717            self.permanent_state.get_decl(decl_id)
718        } else {
719            self.delta
720                .decls
721                .get(decl_id.get() - num_permanent_decls)
722                .expect("internal error: missing declaration")
723                .as_ref()
724        }
725    }
726
727    pub fn get_decl_mut(&mut self, decl_id: DeclId) -> &mut Box<dyn Command> {
728        let num_permanent_decls = self.permanent_state.num_decls();
729        if decl_id.get() < num_permanent_decls {
730            panic!("internal error: can only mutate declarations in working set")
731        } else {
732            self.delta
733                .decls
734                .get_mut(decl_id.get() - num_permanent_decls)
735                .expect("internal error: missing declaration")
736        }
737    }
738
739    pub fn get_signature(&self, decl: &dyn Command) -> Signature {
740        if let Some(block_id) = decl.block_id() {
741            *self.get_block(block_id).signature.clone()
742        } else {
743            decl.signature()
744        }
745    }
746
747    pub fn find_commands_by_predicate(
748        &self,
749        mut predicate: impl FnMut(&[u8]) -> bool,
750        ignore_deprecated: bool,
751    ) -> Vec<(DeclId, Vec<u8>, Option<String>, CommandType)> {
752        let mut output = vec![];
753
754        for scope_frame in self.delta.scope.iter().rev() {
755            for overlay_id in scope_frame.active_overlays.iter().rev() {
756                let overlay_frame = scope_frame.get_overlay(*overlay_id);
757
758                for (name, decl_id) in &overlay_frame.decls {
759                    if overlay_frame.visibility.is_decl_id_visible(decl_id) && predicate(name) {
760                        let command = self.get_decl(*decl_id);
761                        if ignore_deprecated && command.signature().category == Category::Removed {
762                            continue;
763                        }
764                        output.push((
765                            *decl_id,
766                            name.clone(),
767                            Some(command.description().to_string()),
768                            command.command_type(),
769                        ));
770                    }
771                }
772            }
773        }
774
775        let mut permanent = self
776            .permanent_state
777            .find_commands_by_predicate(predicate, ignore_deprecated);
778
779        output.append(&mut permanent);
780
781        output
782    }
783
784    pub fn get_block(&self, block_id: BlockId) -> &Arc<Block> {
785        let num_permanent_blocks = self.permanent_state.num_blocks();
786        if block_id.get() < num_permanent_blocks {
787            self.permanent_state.get_block(block_id)
788        } else {
789            self.delta
790                .blocks
791                .get(block_id.get() - num_permanent_blocks)
792                .expect("internal error: missing block")
793        }
794    }
795
796    pub fn get_module(&self, module_id: ModuleId) -> &Module {
797        let num_permanent_modules = self.permanent_state.num_modules();
798        if module_id.get() < num_permanent_modules {
799            self.permanent_state.get_module(module_id)
800        } else {
801            self.delta
802                .modules
803                .get(module_id.get() - num_permanent_modules)
804                .expect("internal error: missing module")
805        }
806    }
807
808    pub fn get_block_mut(&mut self, block_id: BlockId) -> &mut Block {
809        let num_permanent_blocks = self.permanent_state.num_blocks();
810        if block_id.get() < num_permanent_blocks {
811            panic!("Attempt to mutate a block that is in the permanent (immutable) state")
812        } else {
813            self.delta
814                .blocks
815                .get_mut(block_id.get() - num_permanent_blocks)
816                .map(Arc::make_mut)
817                .expect("internal error: missing block")
818        }
819    }
820
821    /// Find the overlay corresponding to `name`.
822    pub fn find_overlay(&self, name: &[u8]) -> Option<&OverlayFrame> {
823        for scope_frame in self.delta.scope.iter().rev() {
824            if let Some(overlay_id) = scope_frame.find_overlay(name) {
825                return Some(scope_frame.get_overlay(overlay_id));
826            }
827        }
828
829        self.permanent_state
830            .find_overlay(name)
831            .map(|id| self.permanent_state.get_overlay(id))
832    }
833
834    pub fn last_overlay_name(&self) -> &[u8] {
835        let mut removed_overlays = vec![];
836
837        for scope_frame in self.delta.scope.iter().rev() {
838            if let Some(last_name) = scope_frame
839                .active_overlay_names(&mut removed_overlays)
840                .iter()
841                .rev()
842                .next_back()
843            {
844                return last_name;
845            }
846        }
847
848        self.permanent_state.last_overlay_name(&removed_overlays)
849    }
850
851    pub fn last_overlay(&self) -> &OverlayFrame {
852        let mut removed_overlays = vec![];
853
854        for scope_frame in self.delta.scope.iter().rev() {
855            if let Some(last_overlay) = scope_frame
856                .active_overlays(&mut removed_overlays)
857                .rev()
858                .next_back()
859            {
860                return last_overlay;
861            }
862        }
863
864        self.permanent_state.last_overlay(&removed_overlays)
865    }
866
867    pub fn last_overlay_mut(&mut self) -> &mut OverlayFrame {
868        if self.delta.last_overlay_mut().is_none() {
869            // If there is no overlay, automatically activate the last one
870            let overlay_frame = self.last_overlay();
871            let name = self.last_overlay_name().to_vec();
872            let origin = overlay_frame.origin;
873            let prefixed = overlay_frame.prefixed;
874            self.add_overlay(
875                name,
876                origin,
877                ResolvedImportPattern::new(vec![], vec![], vec![], vec![]),
878                prefixed,
879            );
880        }
881
882        self.delta
883            .last_overlay_mut()
884            .expect("internal error: missing added overlay")
885    }
886
887    /// Collect all decls that belong to an overlay
888    pub fn decls_of_overlay(&self, name: &[u8]) -> HashMap<Vec<u8>, DeclId> {
889        let mut result = HashMap::new();
890
891        if let Some(overlay_id) = self.permanent_state.find_overlay(name) {
892            let overlay_frame = self.permanent_state.get_overlay(overlay_id);
893
894            for (decl_key, decl_id) in &overlay_frame.decls {
895                result.insert(decl_key.to_owned(), *decl_id);
896            }
897        }
898
899        for scope_frame in self.delta.scope.iter() {
900            if let Some(overlay_id) = scope_frame.find_overlay(name) {
901                let overlay_frame = scope_frame.get_overlay(overlay_id);
902
903                for (decl_key, decl_id) in &overlay_frame.decls {
904                    result.insert(decl_key.to_owned(), *decl_id);
905                }
906            }
907        }
908
909        result
910    }
911
912    pub fn add_overlay(
913        &mut self,
914        name: Vec<u8>,
915        origin: ModuleId,
916        definitions: ResolvedImportPattern,
917        prefixed: bool,
918    ) {
919        let last_scope_frame = self.delta.last_scope_frame_mut();
920
921        last_scope_frame
922            .removed_overlays
923            .retain(|removed_name| removed_name != &name);
924
925        let overlay_id = if let Some(overlay_id) = last_scope_frame.find_overlay(&name) {
926            last_scope_frame.get_overlay_mut(overlay_id).origin = origin;
927
928            overlay_id
929        } else {
930            last_scope_frame
931                .overlays
932                .push((name, OverlayFrame::from_origin(origin, prefixed)));
933            OverlayId::new(last_scope_frame.overlays.len() - 1)
934        };
935
936        last_scope_frame
937            .active_overlays
938            .retain(|id| id != &overlay_id);
939        last_scope_frame.active_overlays.push(overlay_id);
940
941        self.move_predecls_to_overlay();
942
943        self.use_decls(definitions.decls);
944        self.use_modules(definitions.modules);
945
946        let mut constants = vec![];
947
948        for (name, const_vid) in definitions.constants {
949            constants.push((name, const_vid));
950        }
951
952        for (name, const_val) in definitions.constant_values {
953            let const_var_id =
954                self.add_variable(name.clone(), Span::unknown(), const_val.get_type(), false);
955            self.set_variable_const_val(const_var_id, const_val);
956            constants.push((name, const_var_id));
957        }
958        self.use_variables(constants);
959    }
960
961    pub fn remove_overlay(&mut self, name: &[u8], keep_custom: bool) {
962        let last_scope_frame = self.delta.last_scope_frame_mut();
963
964        let maybe_module_id = if let Some(overlay_id) = last_scope_frame.find_overlay(name) {
965            last_scope_frame
966                .active_overlays
967                .retain(|id| id != &overlay_id);
968
969            Some(last_scope_frame.get_overlay(overlay_id).origin)
970        } else {
971            self.permanent_state
972                .find_overlay(name)
973                .map(|id| self.permanent_state.get_overlay(id).origin)
974        };
975
976        if let Some(module_id) = maybe_module_id {
977            last_scope_frame.removed_overlays.push(name.to_owned());
978
979            if keep_custom {
980                let origin_module = self.get_module(module_id);
981
982                let decls = self
983                    .decls_of_overlay(name)
984                    .into_iter()
985                    .filter(|(n, _)| !origin_module.has_decl(n))
986                    .collect();
987
988                self.use_decls(decls);
989            }
990        }
991    }
992
993    pub fn render(self) -> StateDelta {
994        self.delta
995    }
996
997    pub fn build_desc(&self, spans: &[Span]) -> (String, String) {
998        let comment_lines: Vec<&[u8]> = spans
999            .iter()
1000            .map(|span| self.get_span_contents(*span))
1001            .collect();
1002        build_desc(&comment_lines)
1003    }
1004
1005    pub fn find_block_by_span(&self, span: Span) -> Option<Arc<Block>> {
1006        for block in &self.delta.blocks {
1007            if Some(span) == block.span {
1008                return Some(block.clone());
1009            }
1010        }
1011
1012        for block in self.permanent_state.blocks.iter() {
1013            if Some(span) == block.span {
1014                return Some(block.clone());
1015            }
1016        }
1017
1018        None
1019    }
1020
1021    pub fn find_module_by_span(&self, span: Span) -> Option<ModuleId> {
1022        for (id, module) in self.delta.modules.iter().enumerate() {
1023            if Some(span) == module.span {
1024                return Some(ModuleId::new(self.permanent_state.num_modules() + id));
1025            }
1026        }
1027
1028        for (module_id, module) in self.permanent_state.modules.iter().enumerate() {
1029            if Some(span) == module.span {
1030                return Some(ModuleId::new(module_id));
1031            }
1032        }
1033
1034        None
1035    }
1036
1037    pub fn find_virtual_path(&self, name: &str) -> Option<&VirtualPath> {
1038        // Platform appropriate virtual path (slashes or backslashes)
1039        let virtual_path_name = Path::new(name);
1040
1041        for (virtual_name, virtual_path) in self.delta.virtual_paths.iter().rev() {
1042            if Path::new(virtual_name) == virtual_path_name {
1043                return Some(virtual_path);
1044            }
1045        }
1046
1047        for (virtual_name, virtual_path) in self.permanent_state.virtual_paths.iter().rev() {
1048            if Path::new(virtual_name) == virtual_path_name {
1049                return Some(virtual_path);
1050            }
1051        }
1052
1053        None
1054    }
1055
1056    pub fn get_virtual_path(&self, virtual_path_id: VirtualPathId) -> &(String, VirtualPath) {
1057        let num_permanent_virtual_paths = self.permanent_state.num_virtual_paths();
1058        if virtual_path_id.get() < num_permanent_virtual_paths {
1059            self.permanent_state.get_virtual_path(virtual_path_id)
1060        } else {
1061            self.delta
1062                .virtual_paths
1063                .get(virtual_path_id.get() - num_permanent_virtual_paths)
1064                .expect("internal error: missing virtual path")
1065        }
1066    }
1067
1068    pub fn add_span(&mut self, span: Span) -> SpanId {
1069        let num_permanent_spans = self.permanent_state.spans.len();
1070        self.delta.spans.push(span);
1071        SpanId::new(num_permanent_spans + self.delta.spans.len() - 1)
1072    }
1073}
1074
1075impl<'a> GetSpan for &'a StateWorkingSet<'a> {
1076    fn get_span(&self, span_id: SpanId) -> Span {
1077        let num_permanent_spans = self.permanent_state.num_spans();
1078        if span_id.get() < num_permanent_spans {
1079            self.permanent_state.get_span(span_id)
1080        } else {
1081            *self
1082                .delta
1083                .spans
1084                .get(span_id.get() - num_permanent_spans)
1085                .expect("internal error: missing span")
1086        }
1087    }
1088}
1089
1090impl miette::SourceCode for &StateWorkingSet<'_> {
1091    fn read_span<'b>(
1092        &'b self,
1093        span: &miette::SourceSpan,
1094        context_lines_before: usize,
1095        context_lines_after: usize,
1096    ) -> Result<Box<dyn miette::SpanContents<'b> + 'b>, miette::MietteError> {
1097        let debugging = std::env::var("MIETTE_DEBUG").is_ok();
1098        if debugging {
1099            let finding_span = "Finding span in StateWorkingSet";
1100            dbg!(finding_span, span);
1101        }
1102        for cached_file in self.files() {
1103            let (filename, start, end) = (
1104                &cached_file.name,
1105                cached_file.covered_span.start,
1106                cached_file.covered_span.end,
1107            );
1108            if debugging {
1109                dbg!(&filename, start, end);
1110            }
1111            if span.offset() >= start && span.offset() + span.len() <= end {
1112                if debugging {
1113                    let found_file = "Found matching file";
1114                    dbg!(found_file);
1115                }
1116                let our_span = cached_file.covered_span;
1117                // We need to move to a local span because we're only reading
1118                // the specific file contents via self.get_span_contents.
1119                let local_span = (span.offset() - start, span.len()).into();
1120                if debugging {
1121                    dbg!(&local_span);
1122                }
1123                let span_contents = self.get_span_contents(our_span);
1124                if debugging {
1125                    dbg!(String::from_utf8_lossy(span_contents));
1126                }
1127                let span_contents = span_contents.read_span(
1128                    &local_span,
1129                    context_lines_before,
1130                    context_lines_after,
1131                )?;
1132                let content_span = span_contents.span();
1133                // Back to "global" indexing
1134                let retranslated = (content_span.offset() + start, content_span.len()).into();
1135                if debugging {
1136                    dbg!(&retranslated);
1137                }
1138
1139                let data = span_contents.data();
1140                if &**filename == "<cli>" {
1141                    if debugging {
1142                        let success_cli = "Successfully read CLI span";
1143                        dbg!(success_cli, String::from_utf8_lossy(data));
1144                    }
1145                    return Ok(Box::new(miette::MietteSpanContents::new(
1146                        data,
1147                        retranslated,
1148                        span_contents.line(),
1149                        span_contents.column(),
1150                        span_contents.line_count(),
1151                    )));
1152                } else {
1153                    if debugging {
1154                        let success_file = "Successfully read file span";
1155                        dbg!(success_file);
1156                    }
1157                    return Ok(Box::new(miette::MietteSpanContents::new_named(
1158                        (**filename).to_owned(),
1159                        data,
1160                        retranslated,
1161                        span_contents.line(),
1162                        span_contents.column(),
1163                        span_contents.line_count(),
1164                    )));
1165                }
1166            }
1167        }
1168        Err(miette::MietteError::OutOfBounds)
1169    }
1170}
1171
1172/// Files being evaluated, arranged as a stack.
1173///
1174/// The current active file is on the top of the stack.
1175/// When a file source/import another file, the new file is pushed onto the stack.
1176/// Attempting to add files that are already in the stack (circular import) results in an error.
1177///
1178/// Note that file paths are compared without canonicalization, so the same
1179/// physical file may still appear multiple times under different paths.
1180/// This doesn't affect circular import detection though.
1181#[derive(Debug, Default)]
1182pub struct FileStack(Vec<PathBuf>);
1183
1184impl FileStack {
1185    /// Creates an empty stack.
1186    pub fn new() -> Self {
1187        Self(vec![])
1188    }
1189
1190    /// Creates a stack with a single file on top.
1191    ///
1192    /// This is a convenience method that creates an empty stack, then pushes the file onto it.
1193    /// It skips the circular import check and always succeeds.
1194    pub fn with_file(path: PathBuf) -> Self {
1195        Self(vec![path])
1196    }
1197
1198    /// Adds a file to the stack.
1199    ///
1200    /// If the same file is already present in the stack, returns `ParseError::CircularImport`.
1201    pub fn push(&mut self, path: PathBuf, span: Span) -> Result<(), ParseError> {
1202        // Check for circular import.
1203        if let Some(i) = self.0.iter().rposition(|p| p == &path) {
1204            let filenames: Vec<String> = self.0[i..]
1205                .iter()
1206                .chain(std::iter::once(&path))
1207                .map(|p| p.to_string_lossy().to_string())
1208                .collect();
1209            let msg = filenames.join("\nuses ");
1210            return Err(ParseError::CircularImport(msg, span));
1211        }
1212
1213        self.0.push(path);
1214        Ok(())
1215    }
1216
1217    /// Removes a file from the stack and returns its path, or None if the stack is empty.
1218    pub fn pop(&mut self) -> Option<PathBuf> {
1219        self.0.pop()
1220    }
1221
1222    /// Returns the active file (that is, the file on the top of the stack), or None if the stack is empty.
1223    pub fn top(&self) -> Option<&Path> {
1224        self.0.last().map(PathBuf::as_path)
1225    }
1226
1227    /// Returns the parent directory of the active file, or None if the stack is empty
1228    /// or the active file doesn't have a parent directory as part of its path.
1229    pub fn current_working_directory(&self) -> Option<&Path> {
1230        self.0.last().and_then(|path| path.parent())
1231    }
1232}